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求解二维浅水波方程的移动网格旋转通量法

郑素佩,王令,王苗苗ZHENG SupeiWANG LingWANG Miaomiao

2020应用数学和力学Environmental Science被引 2开放获取

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摘要

In order to improve the resolution of the numerical algorithm for solving the 2D shallow water wave equation, a new algorithm was proposed based on the moving-grid method, with the entropy stable numerical flux function and by means of the mixed numerical flux obtained through the rotating invariance. The numerical solution of the shallow water wave equation and the grid computation process based on the characteristics of the solution were interleaved. The variational principle was used to reconstruct the mesh, and the physical quantity on the new mesh was computed with the 2nd-order precision conservation interpolation formula. The 3rd-order strongly stable Runge-Kutta method and the entropy stable format satisfying the 2nd law of thermodynamics were used to numerically solve the shallow water wave equation. The numerical results show that, the new algorithm has good discontinuity capture ability and high resolution.

引用本文(GB/T 7714)

郑素佩,王令,王苗苗, ZHENG Supei, WANG Ling, 等. 求解二维浅水波方程的移动网格旋转通量法[J]. 应用数学和力学, 2020.

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DOI:https://doi.org/10.21656/1000-0887.400124

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